Faculty of Pharmaceutical Sciences, School of Health Sciences, University of Iceland, Hofsvallagata 53, IS-107 Reykjavík, Iceland.
Department of Biomedical Science, Faculty of Medicine, School of Health Sciences, University of Iceland, Hringbraut 31, IS-101 Reykjavík, Iceland.
Carbohydr Polym. 2021 Sep 1;267:118162. doi: 10.1016/j.carbpol.2021.118162. Epub 2021 May 7.
Here we describe the first synthesis of a new type of polysaccharides derived from chitosan. In these structures, the 2-amino group on the pyranose ring was quantitively replaced by an aromatic 1,2,3-triazole moiety. The 2-amino group of chitosan and di-TBDMS chitosan was converted into an azide by diazo transfer reaction. The chitosan azide and TBDMS-chitosan azide were poorly soluble but could be fully converted to triazoles by "copper-catalysed Huisgen cycloaddition" in DMF or DMSO. The reaction could be done with different alkynes but derivatives lacking cationic or anionic groups were poorly soluble or insoluble in tested aqueous and organic solvents. Derivatives with N,N-dimethylaminomethyl, N,N,N-trimethylammoniummethyl, sulfonmethyl, and phosphomethyl groups linked to the 4-position of the triazole moiety were soluble in water at neutral or basic conditions and could be analyzed by H, C APT, COSY, and HSQC NMR. The quaternized cationic chitotriazolan's had high activity against S. aureus and E. coli, whereas the anionic chitotriazolan's lacked activity.
在这里,我们描述了一种新型多糖的首次合成,该多糖来源于壳聚糖。在这些结构中,吡喃糖环上的 2-氨基被定量取代为芳族 1,2,3-三唑部分。壳聚糖和二-TBDMS 壳聚糖的 2-氨基通过重氮转移反应转化为叠氮化物。壳聚糖叠氮化物和 TBDMS-壳聚糖叠氮化物的溶解度较差,但在 DMF 或 DMSO 中通过“铜催化的 Huisgen 环加成”可完全转化为三唑。该反应可以用不同的炔烃进行,但缺乏阳离子或阴离子基团的衍生物在测试的水相和有机溶剂中溶解度较差或不溶。带有 N,N-二甲基氨甲基、N,N,N-三甲基铵甲基、磺甲基和膦甲基基团的衍生物连接在三唑部分的 4-位,在中性或碱性条件下可溶于水,并可通过 H、C APT、COSY 和 HSQC NMR 进行分析。季铵化的阳离子壳三唑具有很高的抗金黄色葡萄球菌和大肠杆菌活性,而阴离子壳三唑则缺乏活性。